Matches in SemOpenAlex for { <https://semopenalex.org/work/W2803570938> ?p ?o ?g. }
- W2803570938 endingPage "186" @default.
- W2803570938 startingPage "170" @default.
- W2803570938 abstract "By using 1D ZnO nanorod, obtained from a simple two step chemical method as the sensor material, we report the fabrication of highly selective metal-semiconductor-metal (MSM) ultraviolet (UV) photodetector and NO2 gas sensor. The fabricated MSM UV photodetector and gas sensor possesses simplicity in material synthesis and sensor design. The effect of morphological evolution and structural intactness on the sensing properties of UV photodetector and NO2 gas sensor are deeply studied. The well aligned 1 dimensional (1D) ZnO nanorod provides high surface area for the sensing mechanism. The UV photodetector possesses high responsivity in the UV A region (364.81 A/W) with fast photoswitching characteristics at 5 V bias. It shows formation of good ohmic contact between metal semiconductor junctions. NO2 sensing measurement was carried out at relatively lower temperature of about 175 °C. The ZnO nanorods are highly selectivity towards NO2 gas and maximum gas response observed is 35 at 40 ppm of NO2. The NO2 gas sensor shows good repeatability at lower gas concentration of 2 ppm. The present synthesis technique provides cost effective route for obtaining highly ordered ZnO nanorods with simple sensor technology for multifunctional ZnO nanorod sensor." @default.
- W2803570938 created "2018-06-01" @default.
- W2803570938 creator A5041888831 @default.
- W2803570938 creator A5049890531 @default.
- W2803570938 creator A5064128777 @default.
- W2803570938 creator A5068059448 @default.
- W2803570938 creator A5071151758 @default.
- W2803570938 date "2018-08-01" @default.
- W2803570938 modified "2023-10-12" @default.
- W2803570938 title "ZnO nanorod based highly selective visible blind ultra-violet photodetector and highly sensitive NO2 gas sensor" @default.
- W2803570938 cites W1969855517 @default.
- W2803570938 cites W1992186374 @default.
- W2803570938 cites W1993056865 @default.
- W2803570938 cites W2001931104 @default.
- W2803570938 cites W2004032172 @default.
- W2803570938 cites W2012252007 @default.
- W2803570938 cites W2013432179 @default.
- W2803570938 cites W2018395700 @default.
- W2803570938 cites W2024623979 @default.
- W2803570938 cites W2027304287 @default.
- W2803570938 cites W2029320981 @default.
- W2803570938 cites W2036704668 @default.
- W2803570938 cites W2042487679 @default.
- W2803570938 cites W2046050344 @default.
- W2803570938 cites W2057797481 @default.
- W2803570938 cites W2062157350 @default.
- W2803570938 cites W2069235733 @default.
- W2803570938 cites W2070914637 @default.
- W2803570938 cites W2088900245 @default.
- W2803570938 cites W2090326942 @default.
- W2803570938 cites W2090840210 @default.
- W2803570938 cites W2104344724 @default.
- W2803570938 cites W2105435381 @default.
- W2803570938 cites W2107420255 @default.
- W2803570938 cites W2116141898 @default.
- W2803570938 cites W2119294367 @default.
- W2803570938 cites W2139914003 @default.
- W2803570938 cites W2141090820 @default.
- W2803570938 cites W2144013742 @default.
- W2803570938 cites W2155872036 @default.
- W2803570938 cites W2192439549 @default.
- W2803570938 cites W2193074050 @default.
- W2803570938 cites W2198402323 @default.
- W2803570938 cites W2221017398 @default.
- W2803570938 cites W2277370760 @default.
- W2803570938 cites W2283499538 @default.
- W2803570938 cites W2288818296 @default.
- W2803570938 cites W2288887408 @default.
- W2803570938 cites W2346405120 @default.
- W2803570938 cites W2397140763 @default.
- W2803570938 cites W2404730299 @default.
- W2803570938 cites W2411658931 @default.
- W2803570938 cites W2418356540 @default.
- W2803570938 cites W2518583575 @default.
- W2803570938 cites W2560278425 @default.
- W2803570938 cites W2759133433 @default.
- W2803570938 cites W4239234863 @default.
- W2803570938 cites W792506875 @default.
- W2803570938 doi "https://doi.org/10.1016/j.spmi.2018.05.021" @default.
- W2803570938 hasPublicationYear "2018" @default.
- W2803570938 type Work @default.
- W2803570938 sameAs 2803570938 @default.
- W2803570938 citedByCount "37" @default.
- W2803570938 countsByYear W28035709382018 @default.
- W2803570938 countsByYear W28035709382019 @default.
- W2803570938 countsByYear W28035709382020 @default.
- W2803570938 countsByYear W28035709382021 @default.
- W2803570938 countsByYear W28035709382022 @default.
- W2803570938 countsByYear W28035709382023 @default.
- W2803570938 crossrefType "journal-article" @default.
- W2803570938 hasAuthorship W2803570938A5041888831 @default.
- W2803570938 hasAuthorship W2803570938A5049890531 @default.
- W2803570938 hasAuthorship W2803570938A5064128777 @default.
- W2803570938 hasAuthorship W2803570938A5068059448 @default.
- W2803570938 hasAuthorship W2803570938A5071151758 @default.
- W2803570938 hasConcept C108225325 @default.
- W2803570938 hasConcept C126201875 @default.
- W2803570938 hasConcept C136525101 @default.
- W2803570938 hasConcept C138230450 @default.
- W2803570938 hasConcept C142724271 @default.
- W2803570938 hasConcept C171250308 @default.
- W2803570938 hasConcept C178889773 @default.
- W2803570938 hasConcept C192562407 @default.
- W2803570938 hasConcept C204787440 @default.
- W2803570938 hasConcept C23125352 @default.
- W2803570938 hasConcept C2776798109 @default.
- W2803570938 hasConcept C2779227376 @default.
- W2803570938 hasConcept C49040817 @default.
- W2803570938 hasConcept C71924100 @default.
- W2803570938 hasConceptScore W2803570938C108225325 @default.
- W2803570938 hasConceptScore W2803570938C126201875 @default.
- W2803570938 hasConceptScore W2803570938C136525101 @default.
- W2803570938 hasConceptScore W2803570938C138230450 @default.
- W2803570938 hasConceptScore W2803570938C142724271 @default.
- W2803570938 hasConceptScore W2803570938C171250308 @default.
- W2803570938 hasConceptScore W2803570938C178889773 @default.
- W2803570938 hasConceptScore W2803570938C192562407 @default.
- W2803570938 hasConceptScore W2803570938C204787440 @default.